Product Details
B.A.S.H.™ 6.5" Flat and Pipe Jaws Swivel Base Vise and 4 lb Hammer Combo by Wilton®. The Special Edition B.A.S.H.™ Utility Vise has an iron body built for rugged use and extended life. It has 3 posts for bench mounting, a swivel base and the capability of handling pipe as well. A 4 lb B.A.S.H.™ Sledge Hammer with a 12" Unbreakable handle is included as part of this Special Edition kit.
Specifications
Type: Swivel Base Vises |
Jaws Type: Serrated |
Jaws Shape: Flat |
Jaws Width: 6-1/2" |
Pipe Jaws: Yes |
Anvil: Yes |
Includes
- (1) B.A.S.H.™ 6.5" Utility Swivel Base Vises
- (1) B.A.S.H.™ 4 lb Hammer
Features
- Distinctive green powder coat paint on vise resists scratches and provides a tough durable surface
- Vise includes swivel base, built-in pipe jaws and a large anvil work surface
- Special Edition B.A.S.H.™ vise perfect for general clamping applications
- B.A.S.H.™ Sledge Hammer included with 4 lb head and 12" handle
- Unbreakable Handle, Safety Plate, Ergonomic No-Slip Grip and Lanyard Hole standard for B.A.S.H.™
- Trademark B.A.S.H.™ Green Head, drop forged 46 HRC steel head endures the most demanding applications
- Lifetime warranty
The legend of Wilton® begins in 1941, when Hugh W. Vogl, a Czech immigrant, founded the vise manufacturing company naming it after the cross street where the original company building was located: Wilton Avenue and Wrightwood Avenue in Chicago, IL
Hugh Vogl designed a 4” vise with a unique patented bullet design known at the time as the 40S Machinist Vise. The fine threaded spindle accurately fit in a horizontal anchored, unbreakable malleable nut. This created an even, central pull, which eliminated dead motion and unnatural strain on the nut. The thread on this vise was completely enclosed keeping it clean from contaminates and well lubricated for years of smooth operation. The steel key built into the base of the main body guides the movable jaw in a precisely broached keyway which is machined to .002” tolerances which eliminates wear and preventing side twist regardless of pressure exerted.